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Contact

Email: mpzhao@pku.edu.cn
Tel: +86-10-62758153
Office: PKU Science & Technology Building 1009
Research Group: https://www.chem.pku.edu.cn/mpzhao

Meiping Zhao
Professor of Analytical Chemistry

Biography

  • l Professor, College of Chemistry and Molecular Engineering, Peking University (2010-now)

  • l Associate Professor, Peking University (2002-2010)

  • l Visiting scientist at ECN of the Netherlands (1998)

  • l Visiting scientist at MTC of Amsterdam University, the Netherlands (1997-1998)

  • l Ph.D., Peking University (2002)

  • l M.S., Peking University (1993)

  • l B.S., Peking University (1990)

Research Interests

The research of our group is mainly focused on exploring the chemical mechanisms of the bio-molecular recognition reactions and trying to simulate the natural process to develop highly selective, sensitive and efficient analytical methods. Current research projects include:

  • l Exploring the mechanisms of interaction between DNA repair proteins and nucleic acids.

  • l In situ fluorescence imaging and structural analysis of DNA repair proteins in different subcellular compartments of living cells.

  • l Ultra-sensitive detection of DNA damage, genetic mutation, and multiple microbial gene sequences.

  • l Mimicking the bio-molecular recognition by molecular imprinting technology.

Selected Publications

  1. XJ Cao, JH Zheng, RL Zhang, Y Sun, MP Zhao*, Live-cell      imaging of human apurinic/apyrimidinic endonuclease 1 in the nucleus and      nucleolus using a chaperone@DNA probe, Nucleic Acids Research, 2024,      52(8), e41.

  2. W Chen, HQ Xu, SB Dai, JY Wang, ZY Yang, YW Jin, MB Zou, XJ Xiao*, TB      Wu*, W Yan, B Zhang, ZM Lin, MP Zhao*, Detection of      low-frequency mutations in clinical samples by increasing mutation      abundance via the excision of wild-type sequences, Nature Biomedical      Engineering, 2023, 7, 1602. (https://rdcu.be/dhUlL).

  3. ZY Yang, W Chen, JY Wang, MH Shi, RL Zhang, SB Dai, TB Wu*, MP      Zhao*, Programmable One-Pot Enzymatic Reaction for Direct Fluorescence      Detection of Ultralow-Abundance Mutations in the DNA      Duplex, Analytical Chemistry, 2021, 93, 7086.

  4. JQ Zhai, MH Zhao, XJ Cao, MY Li*, MP Zhao*, Metal-ion-responsive      bionanocomposite for selective and reversible enzyme inhibition, Journal      of the American Chemical Society, 2018, 140, 16925.

  5. TB Wu, YF Yang, W Chen, JY Wang, ZY Yang, SL Wang, XJ Xiao, MY      Li, MP Zhao*, Noncanonical substrate preference of lambda exonuclease      for 5'-nonphosphate-ended dsDNA and a mismatch-induced acceleration effect      on the enzymatic reaction, Nucleic Acids Research, 2018, 46, 3119.

  6. TB Wu, W Chen, ZY Yang, HC Tan, JY Wang, XJ Xiao, MY Li, MP      Zhao*, DNA terminal structure-mediated enzymatic reaction for      ultra-sensitive discrimination of single nucleotide variations in      circulating cell-free DNA, Nucleic Acids Research, 2018, 46(4), e24.

  7. XJ Xiao, TB Wu, L Xu, W Chen, MP Zhao*, A branch-migration      based fluorescent probe for straightforward, sensitive and specific      discrimination of DNA mutations, Nucleic Acids Research, 2017, 45      (10): e90.

  8. JQ Zhai, YB Liu, S Huang, SM Fang, MP Zhao*, A specific      DNA-nanoprobe for optically tracking the activities of human      apurinic/apyrimidinic endonuclease 1 in living cells, Nucleic Acids      Research, 2017, 45(6), e45.

  9. XJ Xiao, TB Wu, FD Gu, MP Zhao*, Generation of artificial      sequence-specific nucleases via preassembled inert-template, Chemical      Science, 2016, 7, 2051.

  10. ZY Chen, L Xu, Y Liang, MP Zhao*, pH-Sensitive water-soluble      nanospheric imprinted hydrogels prepared as horseradish peroxidase mimetic      enzyme, Advanced Materials, 2010, 22, 1488.

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